[194] | 1 | #!/bin/bash |
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| 2 | |
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| 3 | function print() |
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| 4 | { |
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| 5 | # prints one comment line followed by any number of "key = value" lines |
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| 6 | echo "# $1 : $2 (default=$3)" |
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| 7 | shift; shift; shift; |
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| 8 | while (($# > 0)) ; do |
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| 9 | echo "$1 = $2" |
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| 10 | shift; shift; |
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| 11 | done |
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| 12 | echo |
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| 13 | } |
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| 14 | |
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| 15 | ################################### Planet ####################################### |
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| 16 | |
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| 17 | function radius { print 'Planetary radius' real 37122E6 radius $1 |
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| 18 | } |
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| 19 | function g { print Gravity real 9.80616 g $1 |
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| 20 | } |
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| 21 | function omega { print 'Planetary rotation rate' real 7.292E-5 omega $1 |
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| 22 | } |
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| 23 | function kappa { print 'kappa=Rd/cpp' real 0.2857143 kappa $1 |
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| 24 | } |
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| 25 | function cpp { print 'Heat capacity at constant pressure' real 1004.70885 cpp $1 |
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| 26 | } |
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| 27 | function preff { print 'Reference pressure' real 101325 preff $1 |
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| 28 | } |
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| 29 | function scale_factor { print 'Scale factor for small planet experiment' real 1. scale_factor $1 |
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| 30 | } |
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| 31 | |
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| 32 | ##################################### Mesh ##################################### |
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| 33 | |
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| 34 | function nbp { print 'Number of subdivisions on a main triangle' integer 40 nbp $1 |
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| 35 | } |
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| 36 | function split { print 'Sub splitting of main rhombus' integer 1 nsplit_i $1 nsplit_j $2 |
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| 37 | } |
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| 38 | function llm { print 'Number of vertical layers' integer 19 llm $1 |
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| 39 | } |
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| 40 | function disvert { print 'Vertical grid' '[std|ncar|ncar30l]' std disvert $1 |
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| 41 | } |
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| 42 | function ncar_dz { print 'Model layer thickness in m, used if disvert=ncar' real 300 ncar_dz $1 |
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| 43 | } |
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| 44 | function optim_it { print 'Mesh optimisation : number of iterations' integer 0 optim_it $1 |
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| 45 | } |
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| 46 | |
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| 47 | ################################# Numerics ################################### |
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| 48 | |
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| 49 | function scheme { print 'Time-stepping scheme' '[euler|leapfrog_matsuno|runge_kutta]' runge_kutta scheme $1 |
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| 50 | } |
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| 51 | function time_step { print 'Time step in s' real 480 dt $1 |
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| 52 | } |
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| 53 | function matsuno { print 'Matsuno period' integer 5 matsuno_period $1 |
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| 54 | } |
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| 55 | function itau_adv { print 'Advection called every itau_adv time steps' integer 2 itau_adv $1 |
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| 56 | } |
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| 57 | function nqtot { print 'Number of tracers' integer 1 nqtot $1 |
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| 58 | } |
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| 59 | function caldyn { print 'Equations solved' '[gcm|adv]' gcm caldyn $1 |
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| 60 | } |
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| 61 | function caldyn_conserv { print 'Discretization of Coriolis term' '[energy|enstophy]' enstrophy caldyn_conserv $1 |
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| 62 | } |
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| 63 | function caldyn_eta { print 'Vertical coordinate' '[eta_mass|eta_lag]' mass caldyn_eta $1 |
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| 64 | } |
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| 65 | function boussinesq { print 'Boussinesq approximation, requires eta_lag' '[.FALSE.|.TRUE.]' .FALSE. boussinesq $1 |
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| 66 | } |
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| 67 | ############################### Time and output ############################### |
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| 68 | |
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| 69 | function time_style() { print 'Time style' '[none|lmd]' lmd time_style $1 |
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| 70 | } |
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| 71 | function ndays() { print 'Number of days' integer ?? ndays $1 |
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| 72 | } |
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| 73 | function run_length() { print 'Run length in s' real ?? run_length $1 |
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| 74 | } |
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| 75 | function day_step { print 'Number of time steps per day' integer ?? day_step $1 |
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| 76 | } |
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| 77 | function write_period { print 'Interval in s between two outputs' integer ?? write_period $1 |
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| 78 | } |
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| 79 | function out_pressure_level { print 'Pressure level to which interpolate T' real 0 out_pression_level $1 |
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| 80 | } |
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| 81 | |
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| 82 | ################################ Physics ###################################### |
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| 83 | |
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| 84 | function etat0 { |
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| 85 | OPTS=$(printf '\n# [jablonowsky06|academic|dcmip[1-4]|heldsz|dcmip2_schaer_noshear|dcmip3]') |
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| 86 | print 'Initial state' "$OPTS" jablonowsky06 etat0 $1 |
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| 87 | } |
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| 88 | function dissip |
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| 89 | { |
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| 90 | print 'Dissipation time for grad(div)' real 5000 tau_graddiv $1 |
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| 91 | print 'Exponent of grad(div) disspation' integer 1 nitergdiv $2 |
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| 92 | print 'Dissipation time for curl(curl)' real 5000 tau_gradrot $3 |
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| 93 | print 'Exponent of curl(curl) disspation' integer 1 nitergrot $2 |
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| 94 | print 'Dissipation time for div(grad)' real 5000 tau_divgrad $3 |
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| 95 | print 'Exponent of div(grad) disspation' integer 1 niterdivgrad $2 |
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| 96 | } |
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| 97 | function guided_type { print 'Type of guiding terms' '[none|dcmip1]' none guided_type $1 |
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| 98 | } |
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| 99 | |
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| 100 | function physics { print 'Physics package' '[automatic|dcmip]' automatic physics $1 |
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| 101 | } |
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| 102 | |
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| 103 | #################################### DCMIP ################################# |
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| 104 | function dcmip1_def() |
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| 105 | { |
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| 106 | OPTS=$(printf '\n# [const|slotted_cyl|cos_bell|dbl_cos_bell_q1|dbl_cos_bell_q2|complement|hadley|dcmip11]') |
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| 107 | print 'DCMIP 1.1 advection test, initial tracer field' "$OPTS" cos_bell dcmip1_shape $1 |
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| 108 | print 'DCMIP 1.1 advection test, wind field' '[solid|deform|hadley]' deform dcmip1_shape $2 |
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| 109 | } |
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| 110 | function dcmip_refs() |
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| 111 | { |
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| 112 | print 'Reference temperature T0 for DCMIP test cases' real 300 ncar_T0 $1 |
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| 113 | print 'Reference pressure p0 for DCMIP test cases, used by disvert if disver=ncar' real 1e5 ncar_p0 $2 |
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| 114 | print 'Exponent for B(eta), used by disvert if disvert=ncar' integer 1 ncar_disvert_c $3 |
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| 115 | } |
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| 116 | function dcmip_physics() |
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| 117 | { |
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| 118 | physics dcmip |
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| 119 | print 'DCMIP physics' '[0|1]' 1 dcmip_physics $1 |
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| 120 | } |
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| 121 | function dcmip4_testcase { print 'DCMIP 4 Test case' '[1|2]' 1 dcmip4_testcase $1 |
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| 122 | } |
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| 123 | |
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| 124 | ####################### Functions generating parameter files #################### |
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| 125 | |
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| 126 | function params { |
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| 127 | # executes any number of "command arg" commands |
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| 128 | while (($# > 0)) ; do |
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| 129 | $1 $2 |
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| 130 | shift; shift; |
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| 131 | done |
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| 132 | } |
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| 133 | |
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| 134 | function group { |
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| 135 | # prints one separation line then executes any number of "command arg" commands |
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| 136 | echo |
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| 137 | echo "#---------------- $1 ----------------" |
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| 138 | echo |
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| 139 | shift |
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| 140 | params $* |
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| 141 | } |
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| 142 | |
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| 143 | function williamson91() |
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| 144 | { |
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| 145 | group 'Mesh' nbp 40 llm 1 optim_it 100 ; split 2 2 |
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| 146 | group 'Numerics' caldyn gcm scheme runge_kutta time_step 480 caldyn_conserv energy |
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| 147 | group 'Time and output' out_pressure_level 85000 write_period 21600 run_length 864000 |
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| 148 | group 'Physical parameters' radius 6.37122e6 g 9.80616 caldyn_eta eta_lag boussinesq .TRUE. etat0 williamson91.6 |
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| 149 | dissip 5000 2 5000 2 5000 2 |
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| 150 | } |
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| 151 | |
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| 152 | function held_suarez() |
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| 153 | { |
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| 154 | group 'Mesh' nbp 40 llm 19 disvert std optim_it 1000 ; split 2 2 |
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| 155 | group 'Numerics' scheme runge_kutta itau_adv 1 day_step 180 caldyn_conserv energy |
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| 156 | group 'Time' time_style lmd ndays 1200 write_period 86400 |
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| 157 | group 'Planet' scale_factor 1 radius 6.371e6 g 9.8 omega 7.292e-5 kappa 0.2857143 cpp 1004 preff 1e5 |
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| 158 | group 'Physical parameters' etat0 held_suarez nqtot 1 |
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| 159 | dissip 50000 2 50000 2 50000 2 |
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| 160 | } |
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| 161 | |
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| 162 | function const_dcmip |
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| 163 | { |
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| 164 | group 'Planet' radius 6.37122e6 g 9.80616 kappa 0.2857143 cpp 1004.5 preff 1e5 omega $1 |
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| 165 | group 'Constants' ; dcmip_refs 300 1e5 1 |
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| 166 | } |
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| 167 | |
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| 168 | function dcmip11 |
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| 169 | { |
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| 170 | echo 'INCLUDEDEF = const.def' |
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| 171 | group 'Mesh' nbp 80 llm 60 disvert ncar ncar_dz 200 optim_it 100 ; split 2 2 |
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| 172 | group 'Numerics' caldyn adv time_step 180 caldyn_conserv energy |
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| 173 | group 'Time' run_length 1036800 write_period 86400 |
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| 174 | group 'Physical parameters' guided_type dcmip1 ; dcmip1_def dcmip11 deform |
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| 175 | } |
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| 176 | |
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| 177 | function dcmip21 |
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| 178 | { |
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| 179 | echo 'INCLUDEDEF = const.def' |
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| 180 | group 'Mesh' nbp 64 llm 60 disvert ncar ncar_dz 500 optim_it 100 ; split 2 2 |
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| 181 | group 'Numerics' time_step 300 caldyn_conserv energy |
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| 182 | dissip 1800 1 1800 2 1800 2 |
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| 183 | group 'Time' run_length 3.6e6 write_period 50000 |
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| 184 | group 'Physical parameters' scale_factor 500 guided_type dcmip1 nqtot 1 etat0 dcmip2_schaer_noshear |
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| 185 | } |
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| 186 | |
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| 187 | function dcmip3 |
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| 188 | { |
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| 189 | const_dcmip 0 |
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| 190 | group 'Mesh' nbp 80 llm 10 disvert ncar ncar_dz 1000 optim_it 100 ; split 2 2 |
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| 191 | group 'Numerics' caldyn gcm scheme runge_kutta time_step 240 |
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| 192 | dissip 1800 1 1800 2 1800 2 |
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| 193 | group 'Time' run_length 4.5e5 write_period 12500 |
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| 194 | group 'Physical parameters' omega 0 scale_factor 125 nqtot 1 etat0 dcmip3 |
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| 195 | } |
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| 196 | |
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| 197 | function dcmip42 |
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| 198 | { |
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| 199 | echo 'INCLUDEDEF = const.def' |
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| 200 | group 'Mesh' nbp 80 llm 30 disvert ncar30l optim_it 100 ; split 2 2 |
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| 201 | group 'Numerics' caldyn gcm scheme runge_kutta time_step 240 |
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| 202 | dissip 1800 1 1800 2 1800 2 |
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| 203 | group 'Time' run_length 3.6e6 write_period 21600 |
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| 204 | group 'Physical parameters' scale_factor 1 nqtot 2 etat0 dcmip4 dcmip4_testcase 2 dcmip_physics 1 |
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| 205 | } |
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| 206 | |
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| 207 | function dcmip5 |
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| 208 | { |
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| 209 | echo 'INCLUDEDEF = const.def' |
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| 210 | group 'Mesh' nbp 64 llm 30 disvert ncar30l optim_it 1000 ; split 2 2 |
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| 211 | group 'Numerics' caldyn gcm scheme runge_kutta time_step 300 |
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| 212 | dissip 10800 1 10800 2 10800 2 |
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| 213 | group 'Time' run_length 864000 write_period 7200 |
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| 214 | group 'Physical parameters' scale_factor 1 nqtot 1 etat0 dcmip5 dcmip_physics 0 |
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| 215 | } |
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| 216 | |
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| 217 | ########## Main program : generate all *.def files in param_sets ############## |
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| 218 | |
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| 219 | function mkcd { cd $ROOT ; mkdir -p $1 ; cd $1 |
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| 220 | } |
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| 221 | |
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| 222 | set -o errexit |
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| 223 | ROOT=$PWD |
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| 224 | |
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| 225 | mkcd climate/Held_Suarez |
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| 226 | held_suarez > run.def |
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| 227 | |
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| 228 | mkcd shallow_water/williamson91 |
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| 229 | williamson91 > run6.def |
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| 230 | |
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| 231 | mkcd dcmip2012 |
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| 232 | const_dcmip 7.292e-5 > const.def |
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| 233 | dcmip11 > run11.def |
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| 234 | dcmip21 > run21.def |
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| 235 | dcmip3 > run3.def |
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| 236 | dcmip42 > run42.def |
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| 237 | dcmip5 > run5.def |
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